Full-Synthesizable Mixed Static-Dynamic Circuit Design Technology Development with High- Performance Video Decoder Chip Validation
碩士 === 逢甲大學 === 電子工程所 === 98 === Domino logic design offers smaller area and higher speed than complementary CMOS design. Domino logic design has become a very popular technology used to design high-performance processors. There have been several studies conducted on mixed static/dynamic circuit, bu...
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ndltd-TW-098FCU054280202015-10-13T18:44:53Z http://ndltd.ncl.edu.tw/handle/76162892966703563206 Full-Synthesizable Mixed Static-Dynamic Circuit Design Technology Development with High- Performance Video Decoder Chip Validation 混合靜動態電路合成器之實現暨高效能影像解碼晶片之設計驗證 YOU-CIH CAI 蔡佑慈 碩士 逢甲大學 電子工程所 98 Domino logic design offers smaller area and higher speed than complementary CMOS design. Domino logic design has become a very popular technology used to design high-performance processors. There have been several studies conducted on mixed static/dynamic circuit, but most have focused on theory without practical implementation in large circuits. In this thesis, we establish the full-synthesizable mixed static-dynamic circuit CAD design flow, which can be used in different kinds of circuit. There are seven types in this design flow: Static circuit 、Dynamic circuit、Static-Dynamic circuit、Very high-speed dynamic circuit、High-speed mixed circuit、Dynamic-Static circuit 、Dynamic-Dynamic circuit. The full-synthesizable mixed static-dynamic circuit design flow contains several tools which combines self-designed CAD (SIS) programs with commercial synthesis tools. The different type mixed static-dynamic circuit is synthesized and optimized by these synthesis CAD flows. Moreover, the STC_VLD testchip has implemented for practical validation. 鄭經華 2010 學位論文 ; thesis 100 zh-TW |
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碩士 === 逢甲大學 === 電子工程所 === 98 === Domino logic design offers smaller area and higher speed than complementary CMOS design. Domino logic design has become a very popular technology used to design high-performance processors. There have been several studies conducted on mixed static/dynamic circuit, but most have focused on theory without practical implementation in large circuits. In this thesis, we establish the full-synthesizable mixed static-dynamic circuit CAD design flow, which can be used in different kinds of circuit. There are seven types in this design flow: Static circuit 、Dynamic circuit、Static-Dynamic circuit、Very high-speed dynamic circuit、High-speed mixed circuit、Dynamic-Static circuit 、Dynamic-Dynamic circuit.
The full-synthesizable mixed static-dynamic circuit design flow contains several tools which combines self-designed CAD (SIS) programs with commercial synthesis tools. The different type mixed static-dynamic circuit is synthesized and optimized by these synthesis CAD flows. Moreover, the STC_VLD testchip has implemented for practical validation.
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鄭經華 |
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鄭經華 YOU-CIH CAI 蔡佑慈 |
author |
YOU-CIH CAI 蔡佑慈 |
spellingShingle |
YOU-CIH CAI 蔡佑慈 Full-Synthesizable Mixed Static-Dynamic Circuit Design Technology Development with High- Performance Video Decoder Chip Validation |
author_sort |
YOU-CIH CAI |
title |
Full-Synthesizable Mixed Static-Dynamic Circuit Design Technology Development with High- Performance Video Decoder Chip Validation |
title_short |
Full-Synthesizable Mixed Static-Dynamic Circuit Design Technology Development with High- Performance Video Decoder Chip Validation |
title_full |
Full-Synthesizable Mixed Static-Dynamic Circuit Design Technology Development with High- Performance Video Decoder Chip Validation |
title_fullStr |
Full-Synthesizable Mixed Static-Dynamic Circuit Design Technology Development with High- Performance Video Decoder Chip Validation |
title_full_unstemmed |
Full-Synthesizable Mixed Static-Dynamic Circuit Design Technology Development with High- Performance Video Decoder Chip Validation |
title_sort |
full-synthesizable mixed static-dynamic circuit design technology development with high- performance video decoder chip validation |
publishDate |
2010 |
url |
http://ndltd.ncl.edu.tw/handle/76162892966703563206 |
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